Formation of Solar Filaments by Steady and Nonsteady Chromospheric Heating
arXiv:1106.0094 · doi:10.1088/0004-637X/737/1/27
Abstract
It has been established that cold plasma condensations can form in a magnetic loop subject to localized heating of the footpoints. In this paper, we use grid-adaptive numerical simulations of the radiative hydrodynamic equations to parametrically investigate the filament formation process in a pre-shaped loop with both steady and finite-time chromospheric heating. Compared to previous works, we consider low-lying loops with shallow dips, and use a more realistic description for the radiative losses. We demonstrate for the first time that the onset of thermal instability satisfies the linear instability criterion. The onset time of the condensation is roughly \sim 2 hr or more after the localized heating at the footpoint is effective, and the growth rate of the thread length varies from 800 km hr-1 to 4000 km hr-1, depending on the amplitude and the decay length scale characterizing this localized chromospheric heating. We show how single or multiple condensation segments may form in the coronal portion. In the asymmetric heating case, when two segments form, they approach and coalesce, and the coalesced condensation later drains down into the chromosphere. With a steady heating, this process repeats with a periodicity of several hours. While our parametric survey confirms and augments earlier findings, we also point out that steady heating is not necessary to sustain the condensation. Once the condensation is formed, it can keep growing also when the localized heating ceases. Finally, we show that the condensation can survive continuous buffeting by perturbations resulting from the photospheric p-mode waves.
43 pages, 18 figures
References in corpus (1)
Cited by in corpus (70)
- Observing the fine structure of loops through high resolution spectroscopic observations of coronal rain with the CRISP instrument at the Swedish Solar Telescope
- Formation and plasma circulation of solar prominences
- Simulations of Prominence Formation in the Magnetized Solar Corona by Chromospheric Heating
- Large Amplitude Longitudinal Oscillations in a Solar Filament
- Imaging and Spectroscopic Observations of a Filament Channel and the Implications for the Nature of Counter-streamings
- The multi-thermal and multi-stranded nature of coronal rain
- Simulating the in situ condensation process of solar prominences
- Observation and Simulation of Longitudinal Oscillations of an Active Region Prominence
- Multidimensional modeling of coronal rain dynamics
- On the 2012 October 23 circular ribbon flare: emission features and magnetic topology
- Some interesting topics provoked by the solar filament research in the past decade
- Multiwavelength observations of a partially eruptive filament on 2011 September 8
- On the occurrence of thermal non-equilibrium in coronal loops
- Coronal rain in magnetic arcades: Rebound shocks, Limit cycles, and Shear flows
- Parametric survey of longitudinal prominence oscillation simulations
- Simulations of solar filament fine structures and their counterstreaming flows
- 3D Prominence-hosting Magnetic Configurations: Creating a Helical Magnetic Flux Rope
- Stereoscopic Observations of an Erupting Mini-filament Driven Two-Sided-Loop Jet and the Applications for Diagnosing Filament Magnetic field
- Long-Period Intensity Pulsations in Coronal Loops Explained by Thermal Non-Equilibrium Cycles
- Reconnection-Condensation Model for Solar Prominence Formation
- Morphology and dynamics of solar prominences from 3D MHD simulations
- The Coronal Monsoon: Thermal Nonequilibrium Revealed by Periodic Coronal Rain
- The Dynamics of Funnel Prominences
- The Distinction Between Thermal Nonequilibrium and Thermal Instability
- MHD simulations of the eruption of coronal flux ropes under coronal streamers
- The solar corona as an active medium for magnetoacoustic waves
- Coronal rain in magnetic bipolar weak fields
- MHD simulation of prominence eruption
- Solar prominences: 'double, double ... boil and bubble'
- On the Support of Solar Prominence Material by the Dips of a Coronal Flux Tube
- Coronal rain in randomly heated arcades
- Thermal instabilities: Fragmentation and field misalignment of filament fine structure
- The Hydromagnetic Interior of a Solar Quiescent Prominence. I. Coupling between Force-balance and Steady Energy-transport
- Simulating coronal condensation dynamics in 3D
- Transition region adaptive conduction (TRAC) in multidimensional magnetohydrodynamic simulations
- Multi-scale observations of thermal non-equilibrium cycles in coronal loops
- Formation of an active region filament driven by a series of jets
- Solar Filament Longitudinal Oscillations along a Magnetic Field Tube with Two Dips
- Damping of prominence longitudinal oscillations due to mass accretion
- MHD waves in two-dimensional prominences embedded in coronal arcades
- Dependence of the Length of Solar Filament Threads on the Magnetic Configuration
- Formation and material supply of an active-region filament associated with newly emerging flux
- A unified model of solar prominence formation
- Electron Beams Cannot Directly Produce Coronal Rain
- Self-consistent 3D radiative MHD simulations of coronal rain formation and evolution
- The influence of flux rope heating models on solar prominence formation
- Material supply and magnetic configuration of an active region filament
- Longitudinal filament oscillations enhanced by two C-class flares
- Field topologies in ideal and near ideal magnetohydrodynamics and vortex dynamics
- Sympathetic Filament Eruptions within a Fan-spine Magnetic System
- Numerical simulations of large-amplitude oscillations in flux-rope solar prominences
- Formation of a Solar Filament by Magnetic Reconnection and Associated Chromospheric Evaporation and Subsequent Coronal Condensation
- Extending Counter-Streaming Motion from an Active Region Filament to Sunspot Light Bridge
- Impact of Dynamic State on the Mass Condensation Rate of Solar Prominences
- Prominence fine structures in weakly twisted and highly twisted magnetic flux ropes
- Dynamic formation of multi-threaded prominences in arcade configurations
- Decayless longitudinal oscillations of a solar filament maintained by quasi-periodic jets
- Plasmoid-fed prominence formation (PF) during flux rope eruption
- On the spectroscopic detection of periodic plasma flows in loops undergoing thermal non-equilibrium
- Rapid Rotation of an Erupting Prominence and the Associated Coronal Mass Ejection on 13 May 2013
- Winking filaments due to cyclic evaporation-condensation
- Temporal and Spatial Scales in Coronal Rain Revealed by UV Imaging and Spectroscopic Observations
- Efficient magnetohydrodynamic modelling of the time-evolving corona by COCONUT
- Multi-threaded prominence oscillations triggered by a coronal shock wave
- Gravitational instability of solar prominence threads I. Curved magnetic fields without dips
- Effect of optically thin cooling curves on condensation formation: Case study using thermal instability
- Formation and Characteristics of Filament Threads in Double-Dipped Magnetic Flux Tubes
- The role of ambipolar heating in the energy balance of solar prominences
- Thermal Non-equilibrium Cycles in a Non-eruptive Pseudo-Streamer
- Thermal instability in coronal loops: linking eigenvalue spectra to time-dependent evolution